New Epoxy Thermosets Organic-Inorganic Hybrid Nanomaterials Derived from Imidazolium Ionic Liquid Monomers and POSS ®Ph

New epoxy-amine networks issue from epoxydized imidazolium ionic liquid monomers (ILMs) and isophorone diamine (IPD) were modified for the first time by incorporating unmodified trisilanol phenyl POSS (POSS -triol) and two ionic liquid-modified POSS (IL-g-POSS ) having chloride (Cl ) and bis-trifluo...

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Veröffentlicht in:Nanomaterials (Basel, Switzerland) Switzerland), 2022-02, Vol.12 (3), p.550
Hauptverfasser: Chabane, Houssém, Livi, Sébastien, Duchet-Rumeau, Jannick, Gérard, Jean-François
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Sprache:eng
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Zusammenfassung:New epoxy-amine networks issue from epoxydized imidazolium ionic liquid monomers (ILMs) and isophorone diamine (IPD) were modified for the first time by incorporating unmodified trisilanol phenyl POSS (POSS -triol) and two ionic liquid-modified POSS (IL-g-POSS ) having chloride (Cl ) and bis-trifluoromethanesulfonimidate (NTf ) counter anions. Then, 5 wt.% of unmodified and IL-modified POSS were introduced in order to develop new solid electrolytes. First, a homogeneous dispersion of the POSS aggregates (diameters from 80 to 400 nm) into epoxy networks was observed. As a consequence, ILM/IPD networks with glass transition temperatures between 45 and 71 °C combined with an enhancement of the thermal stability (>380 °C) were prepared. Moreover, a significant increase of the hydrophobic character and high oil repellency of the network surfaces were obtained by using IL-g-POSS (19-20 mJ.m ), opening up promising prospects for surface coating applications. Finally, these new epoxy networks exhibited outstanding high ionic conductivities (from 3.4 × 10 to 6.8 × 10 S.m ) combined with an increase in permitivity.
ISSN:2079-4991
2079-4991
DOI:10.3390/nano12030550